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桥粒斑珠蛋白通过依赖于 vitronectin 的Src 信号通路调节前列腺癌细胞黏附和运动。

The desmosomal armadillo protein plakoglobin regulates prostate cancer cell adhesion and motility through vitronectin-dependent Src signaling.

机构信息

Department of Pathology, Northwestern University, Chicago, Illinois, United States of America.

出版信息

PLoS One. 2012;7(7):e42132. doi: 10.1371/journal.pone.0042132. Epub 2012 Jul 30.

Abstract

Plakoglobin (PG) is an armadillo protein that associates with both classic and desmosomal cadherins, but is primarily concentrated in mature desmosomes in epithelia. While reduced levels of PG have been reported in localized and hormone refractory prostate tumors, the functional significance of these changes is unknown. Here we report that PG expression is reduced in samples of a prostate tumor tissue array and inversely correlated with advancing tumor potential in 7 PCa cell lines. Ectopically expressed PG enhanced intercellular adhesive strength, and attenuated the motility and invasion of aggressive cell lines, whereas silencing PG in less tumorigenic cells had the opposite effect. PG also regulated cell-substrate adhesion and motility through extracellular matrix (ECM)-dependent inhibition of Src kinase, suggesting that PG's effects were not due solely to increased intercellular adhesion. PG silencing resulted in elevated levels of the ECM protein vitronectin (VN), and exposing PG-expressing cells to VN induced Src activity. Furthermore, increased VN levels and Src activation correlated with diminished expression of PG in patient tissues. Thus, PG may inhibit Src by keeping VN low. Our results suggest that loss of intercellular adhesion due to reduced PG expression might be exacerbated by activation of Src through a PG-dependent mechanism. Furthermore, PG down-regulation during PCa progression could contribute to the known VN-dependent promotion of PCa invasion and metastasis, demonstrating a novel functional interaction between desmosomal cell-cell adhesion and cell-substrate adhesion signaling axes in prostate cancer.

摘要

桥粒斑蛋白(PG)是一种卷曲蛋白,与经典型和桥粒钙黏蛋白都有关联,但主要集中在上皮组织的成熟桥粒中。虽然在局部和激素难治性前列腺肿瘤中已经报道了 PG 水平降低,但这些变化的功能意义尚不清楚。在这里,我们报告 PG 表达在前列腺肿瘤组织阵列的样本中降低,并且与 7 种 PCa 细胞系中肿瘤潜能的进展呈负相关。异位表达 PG 增强了细胞间的黏附强度,并减弱了侵袭性细胞系的运动和侵袭能力,而在肿瘤形成能力较低的细胞中沉默 PG 则产生相反的效果。PG 还通过细胞外基质(ECM)依赖性抑制Src 激酶来调节细胞-基质黏附和运动,表明 PG 的作用不仅归因于细胞间黏附的增加。PG 沉默导致 ECM 蛋白 vitronectin(VN)水平升高,并且将 PG 表达细胞暴露于 VN 中诱导 Src 活性。此外,VN 水平升高和 Src 激活与患者组织中 PG 表达降低相关。因此,PG 可能通过保持 VN 水平低来抑制 Src。我们的结果表明,由于 PG 表达降低导致细胞间黏附丧失,可能会通过 PG 依赖性机制激活 Src 而加剧。此外,PCa 进展过程中 PG 的下调可能有助于已知的 VN 依赖性促进 PCa 侵袭和转移,证明了在前列腺癌中桥粒细胞-细胞黏附与细胞-基质黏附信号轴之间存在新的功能相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ff9/3408445/ebe81fec431b/pone.0042132.g001.jpg

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